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d706d030af
Currently the default C calling convention functions are treated the same as compute kernels. Make this explicit so the default calling convention can be changed to a non-kernel. Converted with perl -pi -e 's/define void/define amdgpu_kernel void/' on the relevant test directories (and undoing in one place that actually wanted a non-kernel). git-svn-id: https://llvm.org/svn/llvm-project/llvm/trunk@298444 91177308-0d34-0410-b5e6-96231b3b80d8
113 lines
7.1 KiB
LLVM
113 lines
7.1 KiB
LLVM
; RUN: llc -march=r600 -mcpu=redwood < %s | FileCheck %s
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; CHECK: {{^}}main1:
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; CHECK: MOV * T{{[0-9]+\.[XYZW], KC0}}
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define amdgpu_kernel void @main1() #0 {
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main_body:
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%tmp = load <4 x float>, <4 x float> addrspace(8)* null
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%tmp7 = extractelement <4 x float> %tmp, i32 0
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%tmp8 = load <4 x float>, <4 x float> addrspace(8)* getelementptr ([1024 x <4 x float>], [1024 x <4 x float>] addrspace(8)* null, i64 0, i32 1)
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%tmp9 = extractelement <4 x float> %tmp8, i32 0
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%tmp10 = load <4 x float>, <4 x float> addrspace(8)* getelementptr ([1024 x <4 x float>], [1024 x <4 x float>] addrspace(8)* null, i64 0, i32 2)
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%tmp11 = extractelement <4 x float> %tmp10, i32 0
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%tmp12 = fcmp ogt float %tmp7, 0.000000e+00
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%tmp13 = select i1 %tmp12, float %tmp9, float %tmp11
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%tmp14 = load <4 x float>, <4 x float> addrspace(8)* null
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%tmp15 = extractelement <4 x float> %tmp14, i32 1
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%tmp16 = load <4 x float>, <4 x float> addrspace(8)* getelementptr ([1024 x <4 x float>], [1024 x <4 x float>] addrspace(8)* null, i64 0, i32 1)
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%tmp17 = extractelement <4 x float> %tmp16, i32 1
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%tmp18 = load <4 x float>, <4 x float> addrspace(8)* getelementptr ([1024 x <4 x float>], [1024 x <4 x float>] addrspace(8)* null, i64 0, i32 2)
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%tmp19 = extractelement <4 x float> %tmp18, i32 1
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%tmp20 = fcmp ogt float %tmp15, 0.000000e+00
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%tmp21 = select i1 %tmp20, float %tmp17, float %tmp19
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%tmp22 = load <4 x float>, <4 x float> addrspace(8)* null
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%tmp23 = extractelement <4 x float> %tmp22, i32 2
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%tmp24 = load <4 x float>, <4 x float> addrspace(8)* getelementptr ([1024 x <4 x float>], [1024 x <4 x float>] addrspace(8)* null, i64 0, i32 1)
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%tmp25 = extractelement <4 x float> %tmp24, i32 2
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%tmp26 = load <4 x float>, <4 x float> addrspace(8)* getelementptr ([1024 x <4 x float>], [1024 x <4 x float>] addrspace(8)* null, i64 0, i32 2)
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%tmp27 = extractelement <4 x float> %tmp26, i32 2
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%tmp28 = fcmp ogt float %tmp23, 0.000000e+00
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%tmp29 = select i1 %tmp28, float %tmp25, float %tmp27
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%tmp30 = load <4 x float>, <4 x float> addrspace(8)* null
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%tmp31 = extractelement <4 x float> %tmp30, i32 3
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%tmp32 = load <4 x float>, <4 x float> addrspace(8)* getelementptr ([1024 x <4 x float>], [1024 x <4 x float>] addrspace(8)* null, i64 0, i32 1)
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%tmp33 = extractelement <4 x float> %tmp32, i32 3
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%tmp34 = load <4 x float>, <4 x float> addrspace(8)* getelementptr ([1024 x <4 x float>], [1024 x <4 x float>] addrspace(8)* null, i64 0, i32 2)
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%tmp35 = extractelement <4 x float> %tmp34, i32 3
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%tmp36 = fcmp ogt float %tmp31, 0.000000e+00
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%tmp37 = select i1 %tmp36, float %tmp33, float %tmp35
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%max.0.i = call float @llvm.maxnum.f32(float %tmp13, float 0.000000e+00)
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%clamp.i = call float @llvm.minnum.f32(float %max.0.i, float 1.000000e+00)
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%max.0.i5 = call float @llvm.maxnum.f32(float %tmp21, float 0.000000e+00)
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%clamp.i6 = call float @llvm.minnum.f32(float %max.0.i5, float 1.000000e+00)
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%max.0.i3 = call float @llvm.maxnum.f32(float %tmp29, float 0.000000e+00)
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%clamp.i4 = call float @llvm.minnum.f32(float %max.0.i3, float 1.000000e+00)
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%max.0.i1 = call float @llvm.maxnum.f32(float %tmp37, float 0.000000e+00)
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%clamp.i2 = call float @llvm.minnum.f32(float %max.0.i1, float 1.000000e+00)
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%tmp38 = insertelement <4 x float> undef, float %clamp.i, i32 0
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%tmp39 = insertelement <4 x float> %tmp38, float %clamp.i6, i32 1
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%tmp40 = insertelement <4 x float> %tmp39, float %clamp.i4, i32 2
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%tmp41 = insertelement <4 x float> %tmp40, float %clamp.i2, i32 3
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call void @llvm.r600.store.swizzle(<4 x float> %tmp41, i32 0, i32 0)
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ret void
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}
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; CHECK: {{^}}main2:
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; CHECK-NOT: MOV
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define amdgpu_kernel void @main2() #0 {
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main_body:
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%tmp = load <4 x float>, <4 x float> addrspace(8)* null
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%tmp7 = extractelement <4 x float> %tmp, i32 0
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%tmp8 = load <4 x float>, <4 x float> addrspace(8)* getelementptr ([1024 x <4 x float>], [1024 x <4 x float>] addrspace(8)* null, i64 0, i32 1)
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%tmp9 = extractelement <4 x float> %tmp8, i32 0
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%tmp10 = load <4 x float>, <4 x float> addrspace(8)* getelementptr ([1024 x <4 x float>], [1024 x <4 x float>] addrspace(8)* null, i64 0, i32 1)
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%tmp11 = extractelement <4 x float> %tmp10, i32 1
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%tmp12 = fcmp ogt float %tmp7, 0.000000e+00
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%tmp13 = select i1 %tmp12, float %tmp9, float %tmp11
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%tmp14 = load <4 x float>, <4 x float> addrspace(8)* null
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%tmp15 = extractelement <4 x float> %tmp14, i32 1
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%tmp16 = load <4 x float>, <4 x float> addrspace(8)* getelementptr ([1024 x <4 x float>], [1024 x <4 x float>] addrspace(8)* null, i64 0, i32 2)
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%tmp17 = extractelement <4 x float> %tmp16, i32 0
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%tmp18 = load <4 x float>, <4 x float> addrspace(8)* getelementptr ([1024 x <4 x float>], [1024 x <4 x float>] addrspace(8)* null, i64 0, i32 2)
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%tmp19 = extractelement <4 x float> %tmp18, i32 1
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%tmp20 = fcmp ogt float %tmp15, 0.000000e+00
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%tmp21 = select i1 %tmp20, float %tmp17, float %tmp19
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%tmp22 = load <4 x float>, <4 x float> addrspace(8)* null
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%tmp23 = extractelement <4 x float> %tmp22, i32 2
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%tmp24 = load <4 x float>, <4 x float> addrspace(8)* getelementptr ([1024 x <4 x float>], [1024 x <4 x float>] addrspace(8)* null, i64 0, i32 1)
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%tmp25 = extractelement <4 x float> %tmp24, i32 3
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%tmp26 = load <4 x float>, <4 x float> addrspace(8)* getelementptr ([1024 x <4 x float>], [1024 x <4 x float>] addrspace(8)* null, i64 0, i32 1)
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%tmp27 = extractelement <4 x float> %tmp26, i32 2
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%tmp28 = fcmp ogt float %tmp23, 0.000000e+00
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%tmp29 = select i1 %tmp28, float %tmp25, float %tmp27
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%tmp30 = load <4 x float>, <4 x float> addrspace(8)* null
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%tmp31 = extractelement <4 x float> %tmp30, i32 3
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%tmp32 = load <4 x float>, <4 x float> addrspace(8)* getelementptr ([1024 x <4 x float>], [1024 x <4 x float>] addrspace(8)* null, i64 0, i32 2)
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%tmp33 = extractelement <4 x float> %tmp32, i32 3
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%tmp34 = load <4 x float>, <4 x float> addrspace(8)* getelementptr ([1024 x <4 x float>], [1024 x <4 x float>] addrspace(8)* null, i64 0, i32 2)
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%tmp35 = extractelement <4 x float> %tmp34, i32 2
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%tmp36 = fcmp ogt float %tmp31, 0.000000e+00
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%tmp37 = select i1 %tmp36, float %tmp33, float %tmp35
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%max.0.i = call float @llvm.maxnum.f32(float %tmp13, float 0.000000e+00)
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%clamp.i = call float @llvm.minnum.f32(float %max.0.i, float 1.000000e+00)
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%max.0.i5 = call float @llvm.maxnum.f32(float %tmp21, float 0.000000e+00)
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%clamp.i6 = call float @llvm.minnum.f32(float %max.0.i5, float 1.000000e+00)
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%max.0.i3 = call float @llvm.maxnum.f32(float %tmp29, float 0.000000e+00)
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%clamp.i4 = call float @llvm.minnum.f32(float %max.0.i3, float 1.000000e+00)
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%max.0.i1 = call float @llvm.maxnum.f32(float %tmp37, float 0.000000e+00)
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%clamp.i2 = call float @llvm.minnum.f32(float %max.0.i1, float 1.000000e+00)
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%tmp38 = insertelement <4 x float> undef, float %clamp.i, i32 0
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%tmp39 = insertelement <4 x float> %tmp38, float %clamp.i6, i32 1
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%tmp40 = insertelement <4 x float> %tmp39, float %clamp.i4, i32 2
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%tmp41 = insertelement <4 x float> %tmp40, float %clamp.i2, i32 3
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call void @llvm.r600.store.swizzle(<4 x float> %tmp41, i32 0, i32 0)
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ret void
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}
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declare void @llvm.r600.store.swizzle(<4 x float>, i32, i32) #0
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declare float @llvm.minnum.f32(float, float) #1
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declare float @llvm.maxnum.f32(float, float) #1
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attributes #0 = { nounwind }
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attributes #1 = { nounwind readnone }
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